Is there a Grenvillian orogen in the southwestern Tarim Craton?

被引:16
|
作者
Zhou, Teng [1 ]
Ge, Rongfeng [1 ]
Zhu, Wenbin [1 ]
Wu, Hailin [1 ]
机构
[1] Nanjing Univ, Sch Earth Sci & Engn, Inst Continental Geodynam, State Key Lab Mineral Deposits Res, Nanjing 210023, Peoples R China
基金
美国国家科学基金会;
关键词
Rodinia Supercontinent; Grenvillian orogeny; Tarim Craton; Neoproterozoic; Rifting; Zircon;
D O I
10.1016/j.precamres.2020.106053
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Rodinia Supercontinent assembled through global-scale Grenvillian (1300-900 Ma) orogeny, so identification and correlation of Grenvillian orogens is fundamental to the geological reconstruction of Rodinia. The Tarim Craton, NW China, has been considered as a building block of Rodinia, but its Neoproterozoic tectonic evolution and relationship with Rodinia remain enigmatic. It was proposed that a Grenvillian orogenic event occurred in the southwestern Tarim, possibly related to its amalgamation with northern Australia. Key evidence for this model came from the similar to 1.0 Ga 40Ar/39Ar ages of the Kalakashi Group in the Tiekelike belt, southwestern Tarim. In this contribution, we report zircon U-Pb ages and Lu-Hf isotopic data, as well as whole-rock geochemical data for the Kalakashi Group from the Buqiong section where a similar to 1.0 Ga 40Ar/39Ar age was reported. Our field and petrographic observations indicate that the primary rock assemblage of the Kalakashi Group is orthogneiss, garnet-bearing mica schist, marble and minor amphibolite. Zircon U-Pb dating of five orthogneisses and an amphibolite yielded crystallization ages of 900-850 Ma and a thermal/fluid overprinting event at similar to 420 Ma. Lu-Hf isotopic analyses of the dated zircon grains from two orthogneisses yielded eHf(t) values from -4 to +7, indicating a mixture of mantle- and crust-derived materials. Geochemical data show that the orthogneisses have relatively high FeOT/MgO and 10,000*Ga/Al ratios, elevated contents of high-fieldstrength elements (HFSE) and negative Ba, Sr and Eu anomalies, characteristic of A(1)-type granite, indicating that the parental magma erupted in an intra-plate rifting setting. Our results indicate that the Kalakashi Group is a volcanic-sedimentary succession that deposited in the Neoproterozoic, rather than the Paleoproterozoic or Mesoproterozoic as previously thought. We found no evidence for a Grenvillian orogenic event from the Kalakashi Group in the Buqiong section. Instead, the age and geochemistry of the studied orthogneisses are remarkably similar to those of the Sailajiazitage Group, although the latter was affected by weaker metamorphism and deformation. Reliable geochronological data from igneous and metamorphic rocks, as well as detrital zircons from Neoproterozoic strata, indicate that no typical record of Grenvillian orogeny occurred in either the north or the south of the Tarim Craton. Instead, we suggest that the northern Tarim was probably dominated by a long-term subduction-accretion, whereas the southern Tarim was likely in a long-term rifting environment in the early Neoproterozoic.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Crustal structures inferred from Bouguer gravity anomalies in the Altai Orogen, Junggar Basin, Tianshan Orogen, and Tarim Basin
    Zhu, Xiaosan
    Huang, Yusen
    Wang, Tao
    Huang, He
    Zheng, Hongwei
    JOURNAL OF ASIAN EARTH SCIENCES, 2023, 257
  • [42] Position of the Tarim Craton in Gondwana: Constraints from Neoproterozoic to early Paleozoic strata in South Tarim, NW China
    Wang, Peng
    Zhao, Guochun
    Han, Yigui
    Liu, Qian
    Yao, Jinlong
    Yu, Shan
    Tectonophysics, 2021, 803
  • [43] Position of the Tarim Craton in Gondwana: Constraints from Neoproterozoic to early Paleozoic strata in South Tarim, NW China
    Wang, Peng
    Zhao, Guochun
    Han, Yigui
    Liu, Qian
    Yao, Jinlong
    Yu, Shan
    TECTONOPHYSICS, 2021, 803
  • [44] Recognition of Grenvillian volcanic suite in the Shennongjia region and its tectonic significance for the South China Craton
    Qiu, Xiao-Fei
    Ling, Wen-Li
    Liu, Xiao-Ming
    Kusky, Timothy
    Berkana, Wafa
    Zhang, Ying-Hua
    Gao, Yong-Juan
    Lu, Shan-Song
    Kuang, Hua
    Liu, Cheng-Xin
    PRECAMBRIAN RESEARCH, 2011, 191 (3-4) : 101 - 119
  • [45] 990 and 1100 Ma Grenvillian tectonothermal events in the northern Oaxacan Complex, southern Mexico:: roots of an orogen
    Solari, LA
    Keppie, JD
    Ortega-Gutiérrez, F
    Cameron, KL
    Lopez, R
    Hames, WE
    TECTONOPHYSICS, 2003, 365 (1-4) : 257 - 282
  • [46] THE VOLGA-DON COLLISIONAL OROGEN IN THE EAST EUROPEAN CRATON AS THE PALEOPROTEROZOIC ANALOGUE OF THE HIMALAYAN-TIBETAN OROGEN
    Shchipansky, A. A.
    Kheraskova, T. N.
    GEODYNAMICS & TECTONOPHYSICS, 2023, 14 (02):
  • [47] "Grenvillian" intra-plate mafic magmatism in the southwestern Yangtze Block, SW China
    Chen, Wei Terry
    Sun, Wei-Hua
    Wang, Wei
    Zhao, Jun-Hong
    Zhou, Mei-Fu
    PRECAMBRIAN RESEARCH, 2014, 242 : 138 - 153
  • [48] Neoproterozoic Magmatism in the Northern Margin of the Tarim Craton: Implications for Rodinia Reconstruction
    ZHANG Zhaowei
    TANG Qingyan
    LI Chusi
    WANG Yalei
    Acta Geologica Sinica(English Edition), 2016, (S1) : 171 - 171
  • [49] Two phases of Paleoproterozoic orogenesis in the Tarim Craton: Implications for Columbia assembly
    Wu, Guanghui
    Yang, Shuai
    Meert, Joseph G.
    Xiao, Yang
    Chen, Yongquan
    Wang, Zecheng
    Li, Xin
    GONDWANA RESEARCH, 2020, 83 : 201 - 216
  • [50] Ferrodoleritic dykes in the Tarim Craton signal Neoproterozoic breakup of Rodinia supercontinent
    Li, Hengxu
    Zhang, Zhaochong
    Santosh, M.
    Wang, Zhenchao
    Jin, Shengkai
    Zhang, Qiang
    Liu, Linghan
    JOURNAL OF ASIAN EARTH SCIENCES, 2020, 200